Department of Biomedical Engineering, Center for Materials Innovation, Washington University in St. Louis, MO 63130, USA.
Acta Biomater. 2011 Jan;7(1):31-56. doi: 10.1016/j.actbio.2010.07.028. Epub 2010 Jul 24.
Macroporous hydrogels may have direct applications in regenerative medicine as scaffolds to support tissue formation. Hydrogel microspheres may be used as drug-delivery vehicles or as building blocks to assemble modular scaffolds. A variety of techniques exist to produce macroporous hydrogels and hydrogel microspheres. A subset of these relies on liquid-liquid two-phase systems. Within this subset, vastly different types of polymerization processes are found. In this review, the history, terminology and classification of liquid-liquid two-phase polymerization and crosslinking are described. Instructive examples of hydrogel microsphere and macroporous scaffold formation by precipitation/dispersion, emulsion and suspension polymerizations are used to illustrate the nature of these processes. The role of the kinetics of phase separation in determining the morphology of scaffolds and microspheres is also delineated. Brief descriptions of miniemulsion, microemulsion polymerization and ionotropic gelation are also included.
大孔水凝胶可作为支持组织形成的支架,直接应用于再生医学。水凝胶微球可用作药物输送载体,或用作组装模块化支架的构建块。有多种技术可用于制备大孔水凝胶和水凝胶微球。其中一部分依赖于液-液两相体系。在这一组中,发现了截然不同的聚合工艺类型。在这篇综述中,描述了液-液两相聚合和交联的历史、术语和分类。通过沉淀/分散、乳液和悬浮聚合形成水凝胶微球和大孔支架的有启发性的例子被用来说明这些过程的本质。还阐述了相分离动力学在决定支架和微球形态中的作用。还简要介绍了 miniemulsion、微乳液聚合和离子凝胶化。
Macromol Rapid Commun. 2018-5-3
Biomacromolecules. 2016-6-28
Int J Nanomedicine. 2025-8-30
J Extracell Vesicles. 2025-3
Mater Today Bio. 2024-11-23
Adv Healthc Mater. 2023-10
Soft Matter. 2008-4-15
Soft Matter. 2006-11-15
Tissue Eng Part A. 2010-1